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Monitoring Long Term Voltage Instability Due to Distribution and Transmission Interaction Using Unbalanced μ PMU and PMU Measurements

机译:使用不平衡的μPMU和PMU测量来监视由于配电和传输相互作用而引起的长期电压不稳定性

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摘要

This paper extends the idea of the Thevenin equivalent into unbalanced 3 phi circuits and proposes a 3 phi long-term voltage stability indicator (VSI), that can identify critical loads in a 3 phi system. Furthermore, in order to identify whether the voltage stability limit is due to the transmission network or a distribution network, a transmission-distribution distinguishing index (TDDI) is proposed. The novelty in the proposed indices is that they can account for the unbalance in the lines and loads, enabling them to use unbalanced phasor measurements naturally. This is supported by mathematical derivations and numerical results. A convex optimization formulation to estimate the 3 phi Thevenin equivalent using PMU and mu PMU measurements is proposed, making it possible to calculate VSI and TDDI in an online model-free manner. Numerical simulations performed using co-simulation between Pypower and GridlabD are presented for the IEEE 9 bus and the 30 bus transmission networks combined with several modified IEEE 13 node and 37 node distribution networks. These case studies validate the proposed 3 phi-VSI and TDDI over a wide range of scenarios and demonstrate the importance of mu PMU measurements in identifying the regions causing long term voltage instability.
机译:本文将戴维南等效电路的思想扩展到不平衡的3 phi电路中,并提出了3 phi长期电压稳定性指示器(VSI),该指示器可以识别3 phi系统中的关键负载。此外,为了识别电压稳定极限是由于传输网络还是由于配电网络,提出了传输-配电区别指数(TDDI)。所提出的索引的新颖之处在于它们可以解决线路和负载中的不平衡问题,从而使它们能够自然地使用不平衡相量测量结果。这由数学推导和数值结果支持。提出了使用PMU和mu PMU测量值估计3 phi戴维宁当量的凸优化公式,从而有可能以无模型在线方式计算VSI和TDDI。介绍了使用Pypower和GridlabD之间的协同仿真进行的数值仿真,这些仿真针对IEEE 9总线和30总线传输网络,并结合了几种改进的IEEE 13节点和37节点配电网络。这些案例研究在广泛的场景中验证了建议的3 phi-VSI和TDDI,并证明了μPMU测量在识别引起长期电压不稳定的区域中的重要性。

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